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Synchrotron light sources and radiation detector metrology

机译:同步加速器光源和辐射探测器的计量

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摘要

Synchrotron light sources are widely used in materials science, protein crystallography and biomicro-scopy applications. They provide a unique stable source of high intensity photons, extending over a broad energy range from the far infrared to the γ-ray region. However, they have also proven invaluable for carrying out detailed metrology of radiation detectors by making available highly collimated and controllable monochromatized beams of synchrotron radiation. Light sources are only accessible at synchrotron research facilities and a number of specialized laboratories (for example, the Physikalisch-Technische Bundesanstalt (PTB), radiometry laboratories in Berlin, Germany) have been established specifically to be carry out photon metrology from the UV to the X-ray wavelengths using primary source standards in conjunction with primary detector standards. In this review, we discuss the use of synchrotron radiation for characterizing and calibrating X- and gamma-ray radiation detectors.
机译:同步加速器光源广泛用于材料科学,蛋白质晶体学和生物显微镜应用。它们提供了独特的稳定的高强度光子源,其能量范围从远红外到γ射线区域都很大。然而,通过提供高度准直且可控的同步加速器辐射单色光束,它们对于执行辐射探测器的详细计量也具有无可估量的价值。只能在同步加速器研究设施中访问光源,并且已经专门建立了许多专门实验室(例如,Physikalisch-Technische Bundesanstalt(PTB),德国柏林的辐射实验室)来进行从UV到UV的光子计量。使用主要光源标准品和主要探测器标准品的X射线波长。在这篇评论中,我们讨论使用同步加速器辐射表征和校准X射线和γ射线探测器。

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